Overcoming substrate inhibition during biological treatment of monoaromatics: recent advances in bioprocess design.
about
The use of high pressure CO2 -facilitated pH swings to enhance in situ product recovery of butyric acid in a two-phase partitioning bioreactor.Biodegradation of endocrine disruptors in solid-liquid two-phase partitioning systems by enrichment cultures.The use of used automobile tyres in a partitioning bioreactor for the biodegradation of xenobiotic mixtures.Passive/aggressive detoxification of continuous flow biotreatment systems using absorptive polymers: partitioning bioreactors treating transient phenol loadings.Demonstration of in situ product recovery of butyric acid via CO2 -facilitated pH swings and medium development in two-phase partitioning bioreactors.Pulse respirometry in two-phase partitioning bioreactors: case study of terephthalic acid biodegradation.Solid-liquid two-phase partitioning bioreactors (TPPBs) operated with waste polymers. Case study: 2,4-dichlorophenol biodegradation with used automobile tires as the partitioning phase.
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Overcoming substrate inhibition during biological treatment of monoaromatics: recent advances in bioprocess design.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 08 April 2011
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Overcoming substrate inhibitio ...... advances in bioprocess design.
@en
Overcoming substrate inhibitio ...... advances in bioprocess design.
@nl
type
label
Overcoming substrate inhibitio ...... advances in bioprocess design.
@en
Overcoming substrate inhibitio ...... advances in bioprocess design.
@nl
prefLabel
Overcoming substrate inhibitio ...... advances in bioprocess design.
@en
Overcoming substrate inhibitio ...... advances in bioprocess design.
@nl
P2860
P1476
Overcoming substrate inhibitio ...... advances in bioprocess design
@en
P2093
Andrew J Daugulis
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P2888
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10.1007/S00253-011-3229-Z
P407
P577
2011-04-08T00:00:00Z